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Simulation of Shakedown Behavior for Flexible Pavement's Unbound Granular Layer

机译:柔性路面未粘结颗粒层的整顿行为模拟

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Full-depth asphalt concrete pavements are generally designed to control fatigue cracking and reduce potential rutting when subjected to repeated heavy traffic loads. A particular interesting question is whether a limit load exists below which excitation shakedown in the sense that the granular layer does not accumulate further deformation. Although pavement design guides give more weight to asphalt concrete layer failures, granular failure may not be ignored; especially for thin layers and/or heavy load. The behavior of granular layers used in base and, sub-base layers of flexible pavement is complicated due to its nonlinear elastoplastic response when subjected to dynamic traffic loading. The objective of this paper is to present a new simplified simulation model for the Shakedown behavior of granular layer in flexible pavement. This method is integrated with Mohr-Coulomb criterion, which is used and applied to simulate the response of unbound granular layers to dynamic loading in a numerical analysis. The results of analysis are then compared to simplify the results of modeling without considering shakedown effects and then, the conclusions are drawn.
机译:一般情况下,全深度沥青混凝土路面设计用于控制疲劳开裂,并在承受反复的重载时减少车辙。一个特别有趣的问题是,在颗粒层不再累积进一步变形的意义上,是否存在极限载荷,在该极限载荷之下,激发振动减小。尽管路面设计指南对沥青混凝土层的破坏给予了更多的重视,但颗粒状的破坏却不容忽视。特别是对于薄层和/或重载。柔性路面的基础层和子基础层中使用的颗粒层的行为非常复杂,这是由于其在承受动态交通荷载时具有非线性弹塑性响应。本文的目的是为柔性路面中的颗粒层减振行为提供一个新的简化仿真模型。该方法与Mohr-Coulomb准则集成在一起,该准则用于数值分析中模拟未结合的颗粒层对动态载荷的响应。然后将分析结果进行比较,以简化建模结果,而不考虑抖动影响,然后得出结论。

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